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HIOKI Test and Measurement Instruments – From Data Acquisition to Analysis
From data loggers, current sensors and current clamps to power analysers and power quality instruments, and on to LCR meters, multimeters, battery testers and differential probes: HIOKI offers precise measurement solutions for applications in industry, research and maintenance.
The HIOKI 3280-10F is a rugged and compact 1000A AC clamp meter with average rectifying functionality. It features a thin, compact clamp core and a broad operating temperature range of -25°C to 65°C,
Portable battery tester for DC voltage, AC resistance at 1 kHz and temperature. Two voltage ranges (6V and 60V), four resistance ranges (3 mΩ to 3 Ω). Angled pin type lead, Bluetooth communication
HIOKI BT4560-50 battery impedance meter for precise impedance testing of Li-ion batteries, cells, modules and packs across 0.01 Hz–1050 Hz. Ideal for R&D and production. Order now from HIOKI Europe.
True RMS clamp multimeter with 1000 A AC/DC current range, voltages up to 1000 V AC/DC. CAT IV 600 V / CAT III 1000 V, 34 mm conductor diameter; resistance, capacitance, continuity, diode test, inrush, Bluetooth optional
Handheld four-wire DC milliohm meter, test current range 500 nA to 1 A, ten resistance ranges from 3 mOhm to 3 MOhm, backlight display, optional Bluetooth communication
The HIOKI IR4056 is a digital insulation resistance tester with efficient functions and features to help shorten work time associated with field insulation testing.
10-channel handheld data logger for voltage / temperature plus 4 channels for pulse / rotation, isolated inputs, up to 60 VDC, max. sampling speed 10 ms, up to 16 GB USB storage capacity, LCD display, signal input via M3 screw terminals
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Highlights – HIOKI instruments for data acquisition, current and power measurement
Discover clamp meters and current sensors for AC and AC/DC current measurement; power meters and power analysers for measuring loss and efficiency; LCR meters for impedance testing; multimeters for voltage, current, and resistance (V/I/R); as well as multi-channel data loggers and memory recorders for capturing trends and transients – complemented by battery testers and resistance meters.
True RMS clamp multimeter with 1000 A AC/DC current range, voltages up to 1000 V AC/DC. CAT IV 600 V / CAT III 1000 V, 34 mm conductor diameter; resistance, capacitance, continuity, diode test, inrush, Bluetooth optional
HIOKI IM3536 benchtop LCR meter for high-accuracy impedance, inductance and capacitance measurements from 4 Hz to 8 MHz. Robust design for lab and production. Order now from HIOKI Europe.
The CT9557 is a power supply unit that supports up to four Hioki current sensors. It can aggregate the provided waveforms for total output. It is ideal for large current or multi-cable circuits. Technical detailsChannels: 4 Output: Waveform, total waveform, and total RMS (BNC terminals) Power consumption: 155 VA max Power supply: AC Adapter Z1002 Input connector type: Hioki ME15W female terminal • Output connector type: BNC Dimensions: 116 x 67 x 132 mm Weight: 420 g Supported sensors: 9272-05, CT684x-05, CT684xA, CT686x-05, 9709-05, CT687x, CT687xA, PW9100, CT6904AMore than specs – find more details here: Zero-flux Current Clamps: Accuracy without effort from mA to kA
The Hioki BT3563A Battery HiTester is an advanced measurement instrument, ideal for fully automated testing of large battery packs, particularly in electric vehicles (xEVs).
Ultra-slim AC/DC current clamp using advanced fluxgate technology, 500 A rated current, DC to 50 kHz frequency bandwidth, high accuracy ±0.07% rdg., wide temperature range of -40°C to +85°C, maximum conductor diameter 20 mm, cable length 5 m
SALE in the HIOKI Shop – sensors, accessories and data acquisition
Discounted products for current measurement and data acquisition: flexible AC current sensors and leakage current clamps, adaptors/cables, SMD test fixtures for LCR equipment and data loggers including energy loggers.
CT7046 - AC Flexible Current Sensor The CT7046 AC Flexible Current Sensor is designed for high-current measurements with a larger diameter to accommodate broader conductors. It provides reliable performance over a wide frequency range. Technical Details: Rated current: 6000 A AC Frequency range: 10 Hz to 50 kHz Amplitude accuracy: ±1.5% rdg, ±0.25% f.s. Diameter of conductors: 254 mm (10.00 in.) Cable length: 2.3 m, 0.2 m³ (7.55 ft., 0.66 ft.) Operating temperature: -25°C to 65°C (-13°F to 149°F) CAT: IV 600 V, III 1000 V Output terminal: PL14
The L1011-10 is a 2.4 m conversion cable for converting BNC to wire, designed for use with the HIOKI P9000 Differential Probe and similar products or connection with screw terminals . Technical Details: Connector: BNC(f) plastic version Purpose: Converts BNC-male connector to open wire Length: 2.4 meters Wire type: Two open-end wires (black/red)
The CT7116 is designed for precise leakage current measurements with high accuracy. It supports BNC conversion for versatile applications. Technical Details: Rated current: 6 A AC Frequency range: 40 Hz to 5 kHz Amplitude accuracy: ±1.0% rdg, ±0.05% f.s. Diameter of conductors: 40 mm (1.57 in.) Cable length: 2.5 m (8.20 ft.) Operating temperature: -25°C to 65°C (-13°F to 149°F) Output terminal: PL14
Portable 3-phase 4-wire Clamp-on Power Logger, voltage range 600 V, current measurement with external sensors, ranges from 50 mA up to 5 kA, frequency measurement 40 to 70 Hz, harmonic measurement up to the 40th order, SD card slot, LAN and USB
The HIOKI 9460 Clip Type Test Lead with integrated temperature sensor is designed for the BT3554 Battery Tester, providing precise battery measurement and temperature monitoring. Length: 226 cm, large Kelvin clamps.
The LR8520 Wireless Fungal Logger offers precise one-channel temperature and humidity measurement with advanced features such as fungal index recording and growth prediction. With Bluetooth® connectivity for easy data download and a compact design, it is ideal for monitoring environments where fungal growth is a concern. Technical Details: Measurement range: -40 °C to 80 °C, 0 to 100 %rh Accuracy: +/- 0.5°C, +/- 3%rh Memory: 500,000 data points per channel Recording intervals: Starting from 0.5s Connectivity: Bluetooth® Features: Fungal index, growth prediction, alarm output
Specialised Measurement Solutions – HIOKI Power Analysers, Data Recorders & Multi-Channel Data Loggers
HIOKI instruments for demanding measurements: precise power measurement with HIOKI power analysers (e.g. HIOKI PW8001, HIOKI PW4001), high-speed data acquisition with HIOKI data recorders (HIOKI MR6000), and modular data acquisition via multi-channel data loggers (HIOKI LR8102). Complementary measurement modules and power supply units (HIOKI M7103, HIOKI M1100), as well as solutions for battery material testing (HIOKI RM2610 Electrode Resistance Measurement System), complete the line-up. These instruments provide ideal solutions for current measurement, analysis, and validation in development and production.
High-precision power analyzer for analysing the efficiency of inverters and inverters with basic accuracy of ±0.03%, sampling rate of 15 MHz, 18-bit AD converters, automatic phase shift correction, data update rate of 1 ms.
HIOKI MR6000 32-channel modular memory recorder with 200 MS/s sampling, 1000 V isolated inputs and intuitive touchscreen for high-speed multi-channel waveform capture and analysis. Order now from HIOKI Europe.
Electrode Resistance Measurement System, isolates and quantifies the composite layer resistivity and the interface resistance between the composite layer and the aluminum or copper current collector foil of LIB electrode sheets in a single measurement
The versatile, modular data logger LR8102 can be used in combination with a variety of modules. It is therefore the perfect solution for integration in applications requiring multiple channels and recording intervals as short as 5 ms.
AC/DC high-voltage divider up to 5 kVrms, bandwidth DC to 4 MHz (–3 dB), 1000:1 division ratio, ±0.08% DC accuracy, ±0.04% accuracy at 50/60 Hz, amplitude flatness ±0.1% to 200 kHz, phase flatness ±0.1° to 500 kHz, CMRR 80 dB at 100 kHz, BNC output
Portable 4-channel power analyzer with ±0.04% basic accuracy, DC to 600 kHz frequency bandwidth, CAT II 1500 V DC, 1 ms data update rate, waveform & D/A output, motor analysis, external DC power input
Key SpecificationsMeasurement frequency: 1 MHz to 3 GHz Typical analog measurement time: 0.5 msBasic accuracy: ±0.65% (Z, reading), ±0.38°(Phase) Typical repeatability: ±0.07% (e.g., 1 nH at 3 GHz) Test signal levels: −40.0 dBm to +1.0 dBm Typical ApplicationsR&D characterization of RF components such as chip inductors, ferrite beads, filters,
resonators and piezoelectric devices Frequency-dependent impedance analysis for component and circuit design Resonance and peak evaluation of piezoelectric and RF components Automated pass/fail testing of high-frequency components in R&D and production
environments
Models in comparison
Model
Measurement frequency
Test signal levels
IM7587
1 MHz bis 3 GHz
−40,0 dBm bis +1,0 dBm
IM7585
1 MHz bis 1,3 GHz
−40,0 dBm bis +1,0 dBm
IM7583
1 MHz bis 600 MHz
−40,0 dBm bis +1,0 dBm
IM7581
100 kHz bis 300 MHz
−40,0 dBm bis +7,0 dBm
Detailed Product OverviewImpedance measurements up to 3 GHz enable analysis of RF components, for example in
wireless communication applications. With a frequency range from 1 MHz to 3 GHz, the
IM7587 supports characterization of components such as chip inductors, ferrite beads, filters,
resonators and matching networks in RF circuit design. Measurement Performance and Analysis Functions
With a basic accuracy of ±0.65% of impedance and ±0.38° of phase, the IM7587 is designed
for precise impedance measurements up to 3 GHz. Typical repeatability of approximately
±0.07% supports reproducible measurement results under defined conditions across its
entire frequency range. A typical measurement time of 0.5 ms enables fast frequency sweeps
without compromising measurement stability. Test signal levels from −40.0 dBm to +1.0 dBm
enable controlled excitation of devices under test. The analyzer supports LCR, sweep and continuous measurement modes and provides
evaluation functions such as comparator and BIN judgment, as well as area, peak and spot
analysis. All measurement settings and analysis functions are accessed directly via the
integrated 8.4 inch color touchscreen. Standard interfaces include USB, LAN and EXT I/O,
with optional RS-232C and GP-IB. For more advanced analysis, the IM7587 features an Equivalent Circuit Analysis function
with five representative circuit models and automatic model selection based on measurement
data. In addition to three-element R-L-C models, it also supports a four-element model
designed for piezoelectric device analysis, enabling applications ranging from general
component characterization to resonator evaluation. Test Head and Fixtures
The IM7587 employs a compact, palm-sized test head connected to the main unit by a
specified connection cable. It is available with 1 m or 2 m cable lengths, allowing users to
balance measurement accuracy and installation flexibility. Placing the test head close to the
device under test minimizes signal path length and reduces parasitic inductance and
capacitance that would otherwise affect high-frequency measurements. This design supports
stable and reproducible results up to 3 GHz while reducing bench space requirements in RF
laboratories. For measurements of SMD components, the IM7587 is typically used in combination with the
IM9201 SMD test fixture. The IM9201 is designed for six standard SMD package sizes from
0201 to 1210 and provides stable two-terminal bottom contacts at the component interface.
The contact geometry is designed for measurements across the entire specified
measurement frequency range. Components are positioned on defined contact pads using a
stopper and pusher mechanism, ensuring correct alignment and repeatable placement. This
reduces measurement variation and enables precise characterization of SMD RF
components such as chip inductors, ferrite beads and filters. For stable mounting, the IM9201 test fixture is installed on the IM9200 test fixture stand. The
stand provides a secure base and a defined mechanical alignment between the test head
and the fixture and includes a magnifier to facilitate handling of small components. The
IM9906 adapter is required to connect the 7 mm interface of the test fixture to the analyzer
test head’s 3.5 mm connector. Calibration and Measurement Integrity
The optional IM9905 calibration kit provides OPEN, SHORT and LOAD reference standards
for correction of system-related measurement errors in high-frequency impedance
measurements up to 3 GHz. The calibration compensates parasitic effects in the
measurement path up to the defined reference plane, including the analyzer test head and
connecting interfaces. The calibration standards are connected via the same IM9906 adapter
used for test fixtures. Comprehensive contact check functions, including DCR testing, Hi-Z reject and waveform
verification, are used to verify contact quality before and, if required, after measurement. This
helps prevent invalid results caused by insufficient probe contact or unstable component
placement. Developed and manufactured in Japan, the IM7587 is designed for stable
measurement performance over time in measurement and test environments with high
demands on long-term stability.
Key Specifications
Slurry conductivity and dispersion evaluation (DCR, R-ratio, Uniformity)Automated equivalent-circuit fitting For aqueous and NMP based slurries Impedance data from 4 Hz to 8 MHz Unique AdvantagesCombines frequency-sweep EIS with automated equivalent-circuit fitting for quantitative slurry evaluationProvides three proprietary metrics (DCR, R-ratio, and Uniformity) for consistent assessment of conductivity and dispersion Typical ApplicationsOptimization of slurry manufacturing conditions (e.g. mixing time, conductive agent content, dispersant ratio) in R&D and production Material research and evaluation using electrical dispersion analysis and comparative conductivity metricsQuality assurance and performance screening of lithium-ion battery slurries in production environments Product Description
The SA2634-KIT Slurry Analysis System is a software-based solution that quantifies the electrical characteristics of lithium-ion battery (LiB) slurries through impedance analysis. The KIT includes the SA2634 analysis software, the IM3536 LCR Meter, the SA9002 Test Fixture, and one pack each of disposable slurry sample containers SA9001 (for NMP-based slurries) and SA9001-01 (for aqueous slurries). By combining these components, the system enables standardized and repeatable evaluation of slurry conductivity and dispersion across a wide frequency range from 4 Hz to 8 MHz. Measurement and Analysis PrincipleUsing electrochemical impedance spectroscopy (EIS), the IM3536 acquires the impedance spectrum of the slurry. The SA2634 software models this data with an equivalent circuit to extract three proprietary parameters: DCR, representing the total resistance of the conductive path; R-ratio, indicating the relative contribution of conductive additives within that path; and Uniformity, reflecting the evenness of the conductive network distribution. Together, these metrics provide a quantitative understanding of how well conductive additives are dispersed and connected within the slurry. They help engineers identify the optimal ratio between active material and conductive agent, assess the homogeneity of dispersion, and directly link electrical behavior to electrode performance.Measurement Process and Practical ApplicationFor each measurement, approximately 1 ml of slurry is dispensed into a disposable sample holder. The SA9001 slurry sample container is used for N-Methyl-2-Pyrrolidone (NMP)-based slurries, while the SA9001-01 is intended for aqueous (water-based) slurries. The filled sample holder is placed into the SA9002 Test Fixture, a fixture developed specifically for this measurement system, where it establishes a stable electrical connection to the IM3536 LCR Meter. Once secured, the system performs an impedance sweep across a user-defined frequency range between 4 Hz and 8 MHz. Each measurement takes approximately one minute, minimizing changes in the slurry’s state during testing. By combining automated equivalent-circuit fitting with batch processing of up to 1,000 datasets, the SA2634 software significantly streamlines data handling and comparison between multiple samples. Over time, accumulated measurement data provide traceable reference values for long-term process control and quality assurance, enabling consistent evaluation across R&D and production environments. The SA2634 system establishes a standardized, quantitative framework for early-stage formulation studies, process optimization, and quality control, helping maintain uniform electrode conductivity and reproducibility from lab scale to mass production.